HackCable - The Ultimate USB-C Keystroke Injection Tool for Ethical Hackers and Cybersecurity Pros

 Kickstarter recently featured HackCable, a USB-C cable designed for cybersecurity research and system testing. While it may look like an ordinary charging cable, HackCable packs powerful features like built-in Wi-Fi and keystroke injection, making it a discreet yet versatile tool for cybersecurity professionals and researchers alike.

HackCable - The Ultimate USB-C Keystroke Injection Tool for Ethical Hackers and Cybersecurity Pros

HackCable Versions: ESP32-S3 or RP2040

HackCable is available in two versions, each powered by a different microcontroller: the ESP32-S3 and the RP2040. Both versions provide unique capabilities for various use cases, from advanced wireless operations to simple offline tasks.

1. Wi-Fi Version: Powered by ESP32-S3

The Wi-Fi-enabled version of HackCable features the ESP32-S3 microcontroller, designed for users who need advanced functionality and remote operation capabilities. This version is equipped with:

  • Built-in Wi-Fi Hotspot: The ESP32-S3 enables remote operations via a built-in Wi-Fi hotspot, allowing users to control the cable from a smartphone or other devices.
  • Dual-Core Processor: The ESP32-S3 offers a dual-core processor running at speeds of up to 240 MHz, making it perfect for complex tasks and high-performance applications.
  • Integrated Wi-Fi and Bluetooth: The microcontroller supports 2.4 GHz Wi-Fi and Bluetooth 5, ensuring reliable and long-range connectivity for remote control and communication.
  • Master-Slave Configuration: Multiple HackCables can be synchronized for coordinated operations, expanding the tool's potential for more complex tasks.

This version is ideal for ethical hackers, penetration testers, and cybersecurity professionals who need flexibility, wireless control, and the ability to operate from a distance.

2. Standard Version: Powered by RP2040

The standard version of HackCable is built around the RP2040 microcontroller, offering a more cost-effective solution for those who don’t require wireless control but still need powerful keystroke injection capabilities. Key features include:

  • Dual-Core ARM Cortex-M0+ Processor: Running at up to 133 MHz, the RP2040 provides solid performance for executing keystroke injection tasks.
  • 2MB Onboard QSPI Flash: Ample memory for storing scripts and configurations.
  • USB 1.1 Support: Full-speed USB support enables seamless integration with various devices.
  • Programmable GPIO Pins: With 26 programmable GPIO pins, the RP2040 offers flexibility for hardware customizations and additional functionalities.

The RP2040-powered version is perfect for beginner hackers, hobbyists, or researchers who need a reliable, offline tool for testing and automation.

Compatibility and Integration

HackCable is compatible with multiple operating systems, including Windows, macOS, Linux, Android, and iOS. Its plug-and-play functionality ensures quick setup and seamless integration, letting you focus on your work instead of configuration issues.

Open Source and Programmability

HackCable is open source, allowing developers to modify the firmware and tailor the device to specific needs. Whether you're programming in Python, C/C++, MicroPython, or other languages, HackCable offers the flexibility to customize its features. With extensive developer support, you can easily write scripts, automate tasks, or expand functionality for your specific use case.

Pricing and Availability

HackCable is available for early backers at discounted prices:

These prices are available for a limited time, so be sure to check out the Kickstarter page for more details on additional options and features.

Whether you're a cybersecurity researcher, ethical hacker, or just a tech enthusiast, HackCable provides an innovative and powerful tool for system testing and vulnerability assessments. With its discreet design, versatile functionality, and ease of use, HackCable is set to become an essential part of your cybersecurity toolkit. Don't miss out on this game-changing device—get yours today at an early backer price!

Vcc Labs has introduced the Nova - A Compact, Open-Source RP2040 Development Board with RGB LED Matrix

 Vcc Labs has introduced the Nova, a small yet powerful open-source hardware development board built around the Raspberry Pi RP2040. Featuring a USB-C port, a bright 70 RGB LED matrix arranged in a 7x10 grid, and two 12-pin GPIO headers, the Nova is designed to be versatile and expandable. It’s perfect for projects like wearables, compact displays, interactive art installations, and simple games.

Vcc Labs has introduced the Nova - A Compact, Open-Source RP2040 Development Board with RGB LED Matrix

Key Features of the Nova

  • Microcontroller: Raspberry Pi RP2040 dual-core Cortex-M0+ running at up to 133 MHz with 264KB SRAM.
  • Storage: Equipped with 2MB QSPI flash.
  • LED Display: A matrix of 70 WS2812 RGB LEDs, each LED measuring a tiny 1x1 mm, providing vibrant color and high customizability.
  • USB Connectivity: USB Type-C port for power, data transfer, and programming.
  • Expansion Options: Two 12-pin headers give access to 20 GPIOs, dual SPI, I2C, UART interfaces, 4x ADC, and pins for Vin, 5V, 3.3V, and GND.
  • Additional Features: Comes with a reset button and BOOT button for easy firmware management.

Power and Dimensions

  • Power Sources:
    • 5V through the USB-C port.
    • 7V to 18V through the Vin pin.
  • Power Usage: Consumes up to 9 watts when all LEDs are set to full brightness.
  • Size and Weight:
    • Dimensions: 30.48 x 20.32 mm (without case).
    • Weight: 4.76 grams with headers, 3 grams without headers.
  • Operating Temperature: Can function in temperatures ranging from -20°C to +85°C.

Programming the Nova

The Nova is compatible with a variety of programming environments:

  • Official Raspberry Pi SDK: Use C/C++ for low-level programming.
  • MicroPython: Perfect for quick development and scripting.
  • Arduino IDE: Utilize familiar Arduino libraries for project creation.

Code samples are available on GitHub, including five classic games: Ball Brick, Flappy Bird, Snake, Space Invaders, and Tetris. These games can be played by connecting five buttons to GPIO pins 2-6. Although the hardware directory currently includes only the Bill of Materials (BoM) and board dimensions, Vcc Labs plans to release full schematics and design files as the Nova is an open-source project. These resources are expected to become available once the crowdfunding campaign concludes.

Nova in Context

The Nova isn't the first RGB LED matrix development board on the market. Other examples, like the 01Space ESP32-based 25 RGB LED matrix boards and Waveshare's ESP32-S3-Matrix board with 64 RGB LEDs, offer similar functionality. However, the Nova stands out with its 70-LED matrix and its use of the RP2040 microcontroller, providing a balance of advanced features without built-in wireless connectivity.

Crowdfunding on Kickstarter

Vcc Labs has launched the Nova on Kickstarter with a modest funding goal of 3,000 Euros. A single Nova board starts at just 18 Euros (around $20 USD), with discounts available for bulk pledges of up to 10 boards. Shipping fees range widely from 3 to 48 Euros, depending on the delivery destination. If all goes as planned, backers should receive their boards by January 2025.

Whether you’re a hobbyist looking to create a unique wearable or an artist seeking to explore interactive lighting, the Nova offers a flexible and compact platform to bring your ideas to life.